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An impedance pneumography signal quality index: Design, assessment and application to respiratory rate monitoring

机译:阻抗膜信号质量指数:设计,评估和应用于呼吸率监测

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摘要

Impedance pneumography (ImP) is widely used for respiratory rate (RR) monitoring. However, ImP-derived RRs can be imprecise. The aim of this study was to develop a signal quality index (SQI) for the ImP signal, and couple it with a RR algorithm, to improve RR monitoring. An SQI was designed which identifies candidate breaths and assesses signal quality using: the variation in detected breath durations, how well peaks and troughs are defined, and the similarity of breath morphologies. The SQI categorises 32 s signal segments as either high or low quality. Its performance was evaluated using two critical care datasets. RRs were estimated from high-quality segments using a RR algorithm, and compared with reference RRs derived from manual annotations. The SQI had a sensitivity of 77.7 %, and specificity of 82.3 %. RRs estimated from segments classified as high quality were accurate and precise, with mean absolute errors of 0.21 and 0.40 breaths per minute (bpm) on the two datasets. Clinical monitor RRs were significantly less precise. The SQI classified 34.9 % of real-world data as high quality. In conclusion, the proposed SQI accurately identifies high-quality segments, and RRs estimated from those segments are precise enough for clinical decision making. This SQI may improve RR monitoring in critical care. Further work should assess it with wearable sensor data.
机译:阻抗气动(IMP)广泛用于呼吸率(RR)监测。但是,IMP-ermived RR可能是不精确的。本研究的目的是为IMP信号开发信号质量指数(SQI),并用RR算法将其耦合,以提高RR监控。设计了一个SQI,其识别候选呼吸并评估信号质量:检测到的呼吸持续时间的变化,定义峰值和槽的程度如何,以及呼吸形态的相似性。 SQI将32个信号段分类为高或低质量。它的性能是使用两个关键护理数据集进行评估。使用RR算法的高质量段估计RRS,并与来自手动注释的参考RRS相比。 SQI的敏感性为77.7%,特异性为82.3%。从分类为高质量的段估计的RRS准确且精确,平均绝对误差为0.21和0.40每分钟呼吸(BPM)在两个数据集上。临床监测仪RRS明显较低。 SQI分类为高质量的现实数据34.9%。总之,建议的SQI准确地识别了高质量的段,从这些段估计的RRS对临床决策进行了精确。此SQI可以提高批判性护理中的RR监测。进一步的工作应使用可穿戴传感器数据进行评估。

著录项

  • 来源
    《Biomedical signal processing and control》 |2021年第3期|102339.1-102339.9|共9页
  • 作者单位

    Kings Coll London Sch Biomed Engn & Imaging Sci Dept Biomed Engn Kings Hlth Partners London SE1 7EH England|Univ Oxford Inst Biomed Engn Dept Engn Sci Oxford OX3 7DQ England|Univ Cambridge Dept Publ Hlth & Primary Care Primary Care Unit Strangeways Res Lab Worts Causeway Cambridge CB1 8RN England;

    Kings Coll London Dept Asthma Allergy & Lung Biol Kings Hlth Partners London SE1 7EH England|Univ Oxford Nuffield Dept Med Oxford OX3 9DU England;

    Univ Oxford Inst Biomed Engn Dept Engn Sci Oxford OX3 7DQ England;

    Univ Oxford Inst Biomed Engn Dept Engn Sci Oxford OX3 7DQ England;

    Kings Coll London Dept Asthma Allergy & Lung Biol Kings Hlth Partners London SE1 7EH England;

    Oxford Univ Hosp NHS Fdn Trust Kadoorie Ctr Crit Care Res & Educ Oxford OX3 9DU England;

    Kings Coll London Sch Biomed Engn & Imaging Sci Dept Biomed Engn Kings Hlth Partners London SE1 7EH England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thoracic impedance; Signal processing; Breathing rate; Patient monitoring;

    机译:胸部阻抗;信号处理;呼吸率;患者监测;
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